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- W2913876935 abstract "We investigate the thermal physics of a Bose-Hubbard model with Rashba spin-orbit coupling starting from a strong coupling mean-field ground state. The essential role of the spin-orbit coupling $left(ensuremath{gamma}right)$ is to promote condensation of the bosons at a finite wave vector ${mathbit{k}}_{0}$. We find that the bosons display either homogeneous or phase-twisted or orbital ordered superfluid phases, depending on $ensuremath{gamma}$ and the interspecies interaction strength $left(ensuremath{lambda}right)$. We show that an increase of $ensuremath{gamma}$ leads to suppression of the critical interaction ${U}_{c}$ for the superfluid to Mott insulator transition in the ground state and a reduction of the ${T}_{c}$ for superfluid to Bose-liquid transition at a fixed interaction strength. We capture the thermal broadening in the momentum distribution function, and the real space profiles of the thermally disordered magnetic textures, including their homogenization for $Tensuremath{gtrsim}{T}_{c}$. We provide a Landau theory based description of the ground state phase boundaries and thermal transition scales and discuss experiments which can test our theory." @default.
- W2913876935 created "2019-02-21" @default.
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- W2913876935 date "2019-05-14" @default.
- W2913876935 modified "2023-10-18" @default.
- W2913876935 title "Thermal transitions of the modulated superfluid for spin-orbit coupled correlated bosons in an optical lattice" @default.
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- W2913876935 doi "https://doi.org/10.1103/physrevb.99.195126" @default.
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